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Smart Transformer-Fed Variable Frequency Distribution Grid

机译:智能变压器馈电变频配电网

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摘要

The smart transformer (ST), a solid-state transformer with control and communication functionalities, that interfaces medium voltage (MV) and low voltage (LV) grids, enables the control of the frequency in the LV grid independently from the MV one. In a ST-fed distribution grid, the ST can interact with the droop controllers of local generators and loads frequency characteristic to control the LV power demand. However, most of the existing controllers for power converters cannot guarantee good harmonic control under variable frequency condition. To address this issue, a frequency-adaptive control scheme based on the fractional-order repetitive control and the frequency-adaptive phaselocked loop are proposed in this paper. The proposed scheme provides fast online parameter tuning capability in order to be highly adaptive to variable frequencies, and it can be easily implemented in the power converters controllers of a ST-fed distribution grid. Moreover, the stability analysis of the frequency-adaptive system considering the effect of synchronization has been investigated in this paper. Simulation and experiments have been carried out to verify the effectiveness of the proposed scheme as well as the considered scenarios.
机译:智能变压器(ST)是具有控制和通信功能的固态变压器,可连接中压(MV)和低压(LV)电网,可独立于MV电网控制LV电网中的频率。在由ST供电的配电网中,ST可以与本地发电机的下垂控制器交互,并加载频率特性以控制LV功率需求。然而,大多数现有的用于功率转换器的控制器不能保证在可变频率条件下良好的谐波控制。针对这一问题,提出了一种基于分数阶重复控制和频率自适应锁相环的频率自适应控制方案。所提出的方案提供了快速的在线参数调整功能,以高度适应可变频率,并且可以在ST馈电配电网的功率转换器控制器中轻松实现。此外,本文还研究了考虑同步影响的频率自适应系统的稳定性。已经进行了仿真和实验,以验证所提出的方案以及所考虑的方案的有效性。

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